Maximising the benefits of calcium carbonate in sustainable cements: opportunities and challenges associated with alkaline waste carbonation

Fei Jin, Mingshan Zhao, Maochun Xu, Liwu Mo
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Abstract

Cement production significantly contributes to global climate change and implementation of carbon capture, utilisation and storage (CCUS) in construction materials is considered a crucial step toward achieving net-zero emissions. Substituting Portland cement (PC) clinker with limestone has been demonstrated to effectively reduce CO2 emissions while enhancing the properties of cement and concrete. Beyond limestone extraction, quarrying, and crushing, various types of alkaline waste materials generated from industrial processes can serve as valuable resources for producing diverse forms of calcium carbonate, simultaneously capturing a substantial amount of CO2. In this context, we contend that due to the distinct characteristics of various calcium carbonate forms, there exists the substantial potential to maximise their technical, economic, and environmental advantages in the production of sustainable cements. We reviewed existing studies of the effects of different calcium carbonate forms on cement properties and underscored the viability of utilising various alkaline wastes to produce different calcium carbonate products. As a promising approach for CO2 reduction, waste management, and resource recovery, we addressed the opportunities and challenges associated with advancing CCUS through the utilisation of carbonated alkaline wastes in sustainable cements. To achieve real-world impacts, we emphasised the necessity for interdisciplinary research collaborations, active involvement from industry stakeholders, regulatory bodies, and governmental support to facilitate the large-scale adoption of these innovative practices.

Abstract Image

在可持续水泥中最大限度地利用碳酸钙:与碱性废物碳化有关的机遇和挑战
水泥生产严重加剧了全球气候变化,在建筑材料中实施碳捕集、利用和封存(CCUS)被认为是实现净零排放的关键一步。用石灰石替代波特兰水泥(PC)熟料已被证明可有效减少二氧化碳排放,同时提高水泥和混凝土的性能。除了石灰石的开采、采石和粉碎之外,工业生产过程中产生的各种碱性废料也可以作为生产各种形式碳酸钙的宝贵资源,同时捕获大量的二氧化碳。在这种情况下,我们认为,由于各种碳酸钙形式具有不同的特点,在生产可持续水泥的过程中,最大限度地发挥其技术、经济和环境优势具有巨大的潜力。我们回顾了关于不同碳酸钙形式对水泥性能影响的现有研究,并强调了利用各种碱性废物生产不同碳酸钙产品的可行性。作为减少二氧化碳排放、废物管理和资源回收的一种可行方法,我们探讨了通过在可持续水泥中利用碳酸化碱性废物来推进 CCUS 的相关机遇和挑战。为了实现对现实世界的影响,我们强调了跨学科研究合作、行业利益相关者积极参与、监管机构和政府支持的必要性,以促进这些创新实践的大规模采用。
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